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Exploiting dijet resonance searches for flavor physics

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arxiv 2103.10332 v2 pith:3ML2LQ4J submitted 2021-03-18 hep-ph

Exploiting dijet resonance searches for flavor physics

classification hep-ph
keywords dijetphysicssearchesflavorresonanceconsistentconstraintsdecays
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work, we reinterpret ATLAS and CMS dijet resonance searches to set robust constraints on all hypothetical tree-level scalar and vector mediators with masses up to 5 TeV, assuming a diquark or a quark-antiquark coupling with an arbitrary flavor composition. To illustrate the application of these general results, we quantify the permissible size of new physics in $\bar B_q\to D_q^{(*)+} \,\{\pi, K\}$ consistent with the absence of signal in dijet resonance searches. Along the way, we perform a full SMEFT analysis of the aforementioned non-leptonic $B$ meson decays at leading-order in $\alpha_s$. Our findings uncover a pressing tension between the new physics explanations of recently reported anomalies in these decays and the dijet resonant searches. The high-$p_T$ constraints are crucial to drain the parameter space consistent with the low-$p_T$ flavor physics data.

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Cited by 2 Pith papers

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  2. QCD-factorization amplitudes from flavour symmetries: beyond the $SU(3)$ symmetric case

    hep-ph 2026-04 unverdicted novelty 5.0

    A data-driven SU(3)-breaking analysis of B to PP decays yields QCD-factorization amplitudes that resemble dynamical predictions and require no enhanced annihilation terms.